Institute for Biochemistry, Leipzig University, Brüderstraße 34, 04103 Leipzig, Germany.
Center for RNA Biology and Ohio State Biochemistry Program, Department of Chemistry and Biochemistry, the Ohio State University, Columbus, OH 43210, USA.
Int J Mol Sci. 2019 Mar 19;20(6):1384. doi: 10.3390/ijms20061384.
For flawless translation of mRNA sequence into protein, tRNAs must undergo a series of essential maturation steps to be properly recognized and aminoacylated by aminoacyl-tRNA synthetase, and subsequently utilized by the ribosome. While all tRNAs carry a 3'-terminal CCA sequence that includes the site of aminoacylation, the additional 5'-G-1 position is a unique feature of most histidine tRNA species, serving as an identity element for the corresponding synthetase. In eukaryotes including yeast, both 3'-CCA and 5'-G-1 are added post-transcriptionally by tRNA nucleotidyltransferase and tRNA guanylyltransferase, respectively. Hence, it is possible that these two cytosolic enzymes compete for the same tRNA. Here, we investigate substrate preferences associated with CCA and G-1-addition to yeast cytosolic tRNA, which might result in a temporal order to these important processing events. We show that tRNA nucleotidyltransferase accepts tRNA transcripts independent of the presence of G-1; however, tRNA guanylyltransferase clearly prefers a substrate carrying a CCA terminus. Although many tRNA maturation steps can occur in a rather random order, our data demonstrate a likely pathway where CCA-addition precedes G-1 incorporation in . Evidently, the 3'-CCA triplet and a discriminator position A73 act as positive elements for G-1 incorporation, ensuring the fidelity of G-1 addition.
为了实现 mRNA 序列到蛋白质的完美翻译,tRNA 必须经历一系列必要的成熟步骤,才能被氨酰-tRNA 合成酶正确识别和氨酰化,然后被核糖体利用。虽然所有 tRNA 都带有 3'-末端的 CCA 序列,包括氨酰化位点,但 5'-G-1 位置是大多数组氨酸 tRNA 物种的独特特征,是相应合成酶的身份元素。在包括酵母在内的真核生物中,3'-CCA 和 5'-G-1 都是由 tRNA 核苷酸转移酶和 tRNA 鸟苷转移酶分别在转录后添加的。因此,这两种细胞质酶有可能争夺相同的 tRNA。在这里,我们研究了与酵母细胞质 tRNA 的 CCA 和 G-1 添加相关的底物偏好性,这可能导致这些重要加工事件的时间顺序。我们表明,tRNA 核苷酸转移酶可以接受不携带 G-1 的 tRNA 转录本;然而,tRNA 鸟苷转移酶显然更喜欢携带 CCA 末端的底物。尽管许多 tRNA 成熟步骤可以以相当随机的顺序发生,但我们的数据表明,在 中,CCA 添加可能先于 G-1 掺入。显然,3'-CCA 三核苷酸和判别位置 A73 作为 G-1 掺入的正元件,确保了 G-1 添加的保真度。